Which is an example of the commutative property? A.
–13 + 27 = 27 + (–13)

B.
–21 + (11 + 13) = (–21 + 11) + 13

C.
4(–3 + 5) = 4(–3) + 4 ∙ 5

D.
–(–8 + 3) = 8 + (–3)

Answers

Answer 1
Answer: A. –13 + 27 = 27 + (–13) is an example of the commutative property.

The commutative property states that a + b = b + a.

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One bus leaves a stop every 9minutes. A second bus leaves the stop every 15 minutes. If they both leave at 1:25 P.M., AT what time will they next leave together.

Answers

1:40 because 25 plus 15 equals 40 and if it went over 60 it would 2:00 so the answer is 1:40

12 1/2 ft= something inches​

Answers

Answer:

150 in

Step-by-step explanation:

there are 12 in in a foot. There are 12 feet so 12*12=144. Then you add 6 because half a foot is 6 in which will give you 150 in

Answer:

I think it is 150 inches. Please tell me if I am worng!!

What’s 5(2x - 11) simplified by distributive property?

Answers

Answer:

Simplified: 10x-55

Step-by-step explanation:

Distribute the five into the parenthesis..

(5)2x- (5)11

Then, multiply.

10x-55

10x-55 is the simplified version by the distributive property.

Answer:

10x - 55

Step-by-step explanation:

5(2x-11)

5*2x=10x

5*11

10x-55

Use the order of operations and the digits 2,4,6 and 8 to create an expression with a value of 2

Answers

8 / 2 + 4 - 6 = 2.

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Metallic silver has a density of 10.50. what is the mass, in g, of a silver ingot that is 28.0 cm long, 4.90 cm wide, and 3.60 cm thick?

Answers

Final answer:

The mass of the silver ingot is found by multiplying its volume with the density of metallic silver. The volume is calculated using the ingot's dimensions, and the final mass is approximately 5186.16 grams.

Explanation:

To determine the mass of a silver ingot based on its dimensions and density, we can use the formula mass = density × volume. First, we calculate the volume of the ingot by multiplying its length (28.0 cm), width (4.90 cm), and thickness (3.60 cm):
Volume = length × width × thickness
= 28.0 cm × 4.90 cm × 3.60 cm
= 493.92 cm³
Next, we use the density of metallic silver, 10.50 g/cm³, to find the mass:
Mass = density × volume
= 10.50 g/cm³ × 493.92 cm³
= 5186.16 g
The mass of the silver ingot is therefore approximately 5186.16 grams.

Learn more about calculating mass here:

brainly.com/question/15743584

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Answer:

5190 g

Step-by-step explanation:

Calculate the volume:

28.0 cm × 4.90 cm × 3.60 cm = 493.92 cm³

Density is mass divided by volume:

D = M / V

Solving for mass:

M = D V

Substituting values:

M = (10.50 g/cm³) (493.92 cm³)

M = 5186.16 g

Rounding to three significant figures, the mass is 5190 g.

Help me please I'm having trouble with this problem ​

Answers

the answer is (4,6) (4,3) (5,4)